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氧化三甲胺对血小板活化的影响。

Influence of Trimethylamine -Oxide on Platelet Activation.

机构信息

Institute of Laboratory Medicine, Clinical Chemistry, and Molecular Diagnostics, University Hospital Leipzig, 04103 Leipzig, Germany.

Department of Neurosurgery, University Hospital Leipzig, 04103 Leipzig, Germany.

出版信息

Nutrients. 2022 Aug 10;14(16):3261. doi: 10.3390/nu14163261.

Abstract

Microbiome-derived trimethylamine -oxide (TMAO) has been associated with platelet hyperreactivity and subsequent atherogenesis. Whether physiological TMAO-levels influence platelet-derived lipid mediators remains unknown. Little is known about pre-analytic factors potentially influencing TMAO concentrations. We aimed at developing a quantitative LC-MS/MS method to investigate in-vivo and in-vitro pre-analytical factors in TMAO analysis to properly assess the proposed activating effect of TMAO on platelets. TMAO, betaine, carnitine, and choline were analyzed by HILIC-ESI-MS/MS within 6 min total run time. Method validation included investigation of reproducibility, recovery, sensitivity, and in-vitro pre-analytical factors. A 24-h monitoring experiment was performed, evaluating in-vivo pre-analytical factors like daytime or diet. Finally, the effects of different TMAO concentrations on platelet activation and corresponding alterations of platelet-derived eicosanoid release were analyzed. The method showed high reproducibility (CVs ≤ 5.3%), good recovery rates (96-98%), and negligible in-vitro pre-analytical effects. The influence of in-vivo pre-analytical factors on TMAO levels was not observable within the applied experimental conditions. We did not find any correlation between TMAO levels and platelet activation at physiological TMAO concentrations, whereas platelet-derived eicosanoids presented activation of the cyclooxygenase and lipoxygenase pathways. In contrast to previously published results, we did not find any indications regarding diet dependency or circadian rhythmicity of TMAO levels. Our results do not support the hypothesis that TMAO increases platelet responsiveness via the release of lipid-mediators.

摘要

微生物衍生的三甲胺氧化物(TMAO)与血小板高反应性及随后的动脉粥样硬化形成有关。生理 TMAO 水平是否影响血小板衍生的脂质介质尚不清楚。关于可能影响 TMAO 浓度的分析前因素知之甚少。我们旨在开发一种定量 LC-MS/MS 方法,以研究 TMAO 分析中的体内和体外分析前因素,从而正确评估 TMAO 对血小板的拟激活作用。TMAO、甜菜碱、肉碱和胆碱在 6 分钟的总运行时间内通过亲水作用色谱-电喷雾串联质谱(HILIC-ESI-MS/MS)进行分析。方法验证包括重复性、回收率、灵敏度和体外分析前因素的研究。进行了 24 小时监测实验,评估了日间或饮食等体内分析前因素。最后,分析了不同 TMAO 浓度对血小板激活的影响及其对血小板衍生类二十烷酸释放的相应改变。该方法显示出较高的重现性(CVs≤5.3%)、良好的回收率(96-98%)和可忽略不计的体外分析前效应。在应用的实验条件下,体内分析前因素对 TMAO 水平的影响无法观察到。我们没有发现生理 TMAO 浓度下 TMAO 水平与血小板激活之间存在任何相关性,而血小板衍生的类二十烷酸则表现出环氧化酶和脂氧化酶途径的激活。与之前发表的结果相反,我们没有发现任何关于 TMAO 水平与饮食依赖或昼夜节律性相关的迹象。我们的结果不支持 TMAO 通过释放脂质介质增加血小板反应性的假设。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d9d9/9413306/f36c02c28f45/nutrients-14-03261-g001.jpg

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